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在过去20年里, 激光技术的发展使阿秒科学成为一个新的研究领域, 可为量子少体超快演化过程的研究提供新视角. 当前实验室中制备的阿秒脉冲以孤立脉冲或脉冲串的形式被广泛应用于实验研究中, 其超快变化的光场允许人们操控和跟踪电子在原子尺度的运动, 实现对亚飞秒时间尺度电子动力学的实时追踪. 本综述聚焦于阿秒科学的重要组成部分, 即原子分子超快动力学研究的进展. 首先介绍阿秒脉冲的产生和发展, 主要包括高次谐波原理和孤立阿秒脉冲分离方法; 然后系统地介绍阿秒脉冲在原子分子超快动力学研究中的应用, 包括光电离时间延迟、阿秒电荷迁移和非绝热分子动力学等方面; 最后对阿秒脉冲在原子分子超快动力学研究中的应用进行总结和展望.In the past two decades, the development of laser technology has made attosecond science become a cutting-edge research field, providing various novel perspectives for the study of quantum few-body ultrafast evolution. At present, the attosecond pulses prepared in laboratories are widely used in experimental research in the form of isolated pulses or pulse trains. The ultrafast changing light field allows one to control and track the motions of electrons on an atomic scale, and realize the real-time tracking of electron dynamics on a sub-femtosecond time scale. This review focuses on the research progress of ultrafast dynamics of atoms and molecules, which is an important part of attosecond science. Firstly, the generation and development of attosecond pulses are reviewed, mainly including the principle of high-order harmonic and the separation method of single-attosecond pulses. Then the applications of attosecond pulses are systematically introduced, including photo-ionization time delay, attosecond charge migration, and non-adiabatic molecular dynamics. Finally, the summary and outlook of the application of attosecond pulses are presented.
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